Print Reference   •  Download PDF version of manuscript   •  Close window

References
1. Breinan HA, Hsu H-P, Spector M. Chondral defects in animal models:Effects of selected repair procedures in canines. Clin. Orthop. In press.
2. Wakitani S, Kimura T, Hirooka A, et al. Repair of rabbit articular surfaces with allograft chondrocytes embedded in collagen gel. J. Bone Joint Surg. 1989;71-B:74-80.
3. Grande DA, Pitman MI, Peterson L, Menche D, Klein M. The repair of experimentally produced defects in rabbit articular cartilage by autologous chondrocyte transplantation. J. Orthop. Res. 1989;7:208-218.
4. Shahgaldi BF, Amis AA, Heatley FW, McDowell J, Bentley G. Repair of cartilage lesions using biological implants:a comparative histological and biomechanical study in goats. J. Bone Joint Surg. 1991;73-B:57-64.
5. Bruns J, Kersten P, Lierse W, Weiss A, Silbermann M. The in vitro influence of different culture conditions on the potential of sheep rib perichondrium to form hyaline-like cartilage. Evaluation of glueing materials used for in vivo graft fixation. J. Virchows Archiv. 1994;424:169-175.
6. Nehrer S, Breinan HA, Ramappa A, et al. Chondrocyte-seeded collagen matrices implanted in a chondral defect in a canine model. Biomat. 1998;19:2313-2328.
7. Breinan HA, Minas T, Hsu H-P, Nehrer S, Sledge CB, Spector M. Effect of cultured autologous chondrocytes on repair of chondral defects in a canine model. J. Bone Joint Surg. 1997;79-A:1439-1451.
8. Nixon AJ, Sams AE, Lust G, Grande D, Mohammed HO. Temporal matrix synthesis and histologic features of a chondrocyte-laden porous collagen cartilage analogue. Am. J. Vet. Res. 1993;54:349-356.
9. Kim HKW, Moran ME, Salter RB . The potential for regeneration of articular cartilage in defects created by chondral shaving and subchondral abrasion:an experimental investigation in rabbits. J. Bone Joint Surg. 1991;73-A:1301-1315.
10. Wei X, Gao J, Messner K. Maturation-dependent repair of untreated osteochondral defects in the rabbit knee joint. J. Biomed. Mater. Res. 1997;34:63-72.
11. Fuller JA, Ghadially FN. Ultrastructural observations of surgically produced partial thickness defects in articular cartilage. Clin. Orthop. 1972;86:193-205.
12. Namba RS, Meuli M, Sullivan KM, Le AX, Adzick NS. Spontaneous repair of superficial defects in articular cartilage in a fetal lamb model. J. Bone Joint Surg. 1998;80A:4-10.
13. Shapiro F, M. D. , Koide S, M. D. , Glimcher MJ, M. D. Cell origin and differentiation in the repair of full-thickness defects of articular cartilage. J. Bone Joint Surg. 1993;75-A:532-553.
14. Brittberg M, Lindahl A, Nilsson A, Ohlsson C, Isaksson O, Peterson L. Treatment of deep cartilage defects in the knee with autologous chondrocyte transplantation. N. Engl. J. Med. 1994;331:889-894.
15. Mankin HJ, Dorfman H, Lippiello L, Zarins A. Biomechanical and metabolic abnormalities in articular cartilage from osteo-arthritic human hips. J. Bone Jt. Surg. 1971;53-A:523-537.
16. O'Driscoll SW, Salter RB. The repair of major osteochondral defects in joint surfaces by neochondrogenesis with autogenous osteoperiosteal grafts stimulated by continuous passive motion. An experimental investigation in the rabbit. Clin. Orthop. 1986;208:131-140.
17. Wakitani S, Goto T, Pineda SJ, et al. Mesenchymal cell-based repair of large, full-thickness defects of articular cartilage. J. Bone Joint Surg. 1994;76-A:579-592.
18. Hacker SA, Healey RM, Yoshioka M, Coutts RD. A methodology for the quantitative assessment of articular cartilage histomorphometry. Osteoarthr. Cart. 1997; 5:343-355.
19. Rodrigo JJ, Steadman JR, Silliman JF, Fulstone HA. Improvement of full-thickness chondral defect healing in the human knee after debridement and microfracture using continuous passive motion. Am. J. Knee Surg. 1994;7:109-116.
20. Salter RB, Simmonds DF, Malcolm BW, Rumble EJ, MacMichael D. The biological effect of continuous passive motion on the healing of full-thickness defects in articular cartilage. J. Bone Jt. Surg. 1980;62-A:1232-1251.
21. Breinan HA, Minas T, Hsu H-P, Nehrer S, Shortkroff S, Spector M. Autlogous chondrocyte implantation in a canine model:change in composition of reparative tissue with time. In press.
22. Breinan HA, Martin SD, Hsu H-P, Spector M. Healing of canine articular cartilage defects treated with microfracture, a type II collagen matrix, or cultured autologous chondrocytes. J. Orthop. Res. 2000;18:781-789.
23. Wang Q, Breinan HA, Hsu HP, Spector M. Healing of defects in canine articular cartilage:Distribution of nonvascular alpha-smooth muscle actin-containing cells. Wound Repair Regen. 2000;8:145-158.
24. Huibregtse BA, Samuels JA, O'Callaghan MW. Development of a cartilage defect model of the knee in the goat for autologous chondrocyte implantation research, Trans. Orthop. Res. Soc. , Anaheim, CA, Feb. 1-4, 1999.
25. Breinan HA, Minas T, Hsu H-P, et al. Histological evaluation of the time course of healing of articular cartilage defects treated with cultured autologous chondrocytes. Tiss. Engr. 1998;4:101-114.



Print Reference   •  Download PDF version of manuscript   •  Close window